Entirely electromagnetic analysis of microlenses without a beam-shaping aperture
Author:
Publisher
The Optical Society
Reference21 articles.
1. Scalar integral diffraction methods: unification, accuracy, and comparison with a rigorous boundary element method with application to diffractive cylindrical lenses
2. Rigorous electromagnetic analysis of diffractive cylindrical lenses
3. Metallic surface-relief on-axis and off-axis focusing diffractive cylindrical mirrors
4. Finite-substrate-thickness cylindrical diffractive lenses: exact and approximate boundary-element methods
5. Effects of fabrication errors on the performance of cylindrical diffractive lenses: rigorous boundary-element method and scalar approximation
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1. Lenticular arrays based on liquid crystals;Opto-Electronics Review;2012-01-01
2. Diffractive micro-optical elements for implementing hollow beam and bi-focus simultaneously;Optics & Laser Technology;2008-10
3. Focusing performance of the closed-boundary cylindrical microlenses analyzed by the boundary element method;Optics Communications;2006-10
4. Simple method to measure the focal length of lenses;Optical Engineering;2002-11-01
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